Fighting a Harmful Algal Bloom

In the Netherlands

At the start of august 2012, a dangerously high concentration of the dinoflagellate Alexandrium Ostenfeldii was found within a creek near Ouwerkerk, Zeeland. This species is known to produce very toxic substances (saxitoxine among others), and with concentrations of millions of cells per liter this could pose a threat to humans and wildlife. Luckily these algae could be isolated in time. But how to get rid of them? 

In a cooperative effort between Rijkswaterstaat, Arcadis, the University of Amsterdam and the local authorities a newly developed method was tested. By adding low concentrations of hydrogen peroxide the bloom could be destroyed. The CytoSenCytoSensese instrument owned by Rijkswaterstaat was used for analyzing the effects of the treatment. By closely monitoring the concentrations and activity of the species using the Cytosense, the effects of the treatment could be tracked in real time. The results of this analysis were used to tune the exact amounts of H2O2 to be added. Within two hours after the addition of the peroxide the photosynthetic capacity was dimished by 97%, and after two days the concentrations of Alexandrium Ostenfeldii was brought back to only 1% of its original value, making the water fit for mixing with other surface waters again. Since peroxide breaks down into water and oxygen, it poses no long-term threats to the ecosystem.

Help Shape a High- Frequency Plankton Observation Guide

To support harmonisation across the community, Dr. Veronique Creach (Cefas) is developing a Terms of Reference (TOR) within the ICES Working Group on Phytoplankton and Microbial Ecology (WGPME): “Create a guide for determining consistent plankton observations at high frequency.”

High-frequency flow cytometry and imaging are increasingly used to characterise phytoplankton diversity, including community cell-size structure. This approach aligns with the GOOS-edited (2025) Essential Ocean Variable Specification Sheet and supports higher-order products such as Phytoplankton Functional Types. As autonomous, high-sampling deployments expand, shared best practices for
collection, measurement, and analysis are essential.

To support harmonisation across the community, we are developing a Terms of Reference (TOR) within the ICES Working Group on Phytoplankton and Microbial Ecology (WGPME): “Create a guide for determining consistent plankton observations at high frequency.”

Who we’re looking for: CytoBuoy users (any platform or configuration).
What to share: sampling workflows, calibration/QA approaches, processing pipelines, metadata practices, and lessons learned from autonomous/high-frequency deployments.
Why participate: help establish consistent methods and improve
comparability across datasets and regions.

If you use a CytoBuoy instrument and would like to contribute, please contact Dr Veronique Creach (veronique.creach@cefas.gov.uk) or Nicole Poulton (npoulton@bigelow.org). A brief note describing your instrument configuration and use case is enough to get started.